DocumentCode
157837
Title
A new six-parameter model for solar cell parameters based on padé approximants
Author
Jingshu Sang ; Shuxian Lun ; Tingting Guo
Author_Institution
Coll. of Math. & Phys., Bohai Univ., Jinzhou, China
fYear
2014
fDate
8-10 Oct. 2014
Firstpage
356
Lastpage
361
Abstract
This paper proposes a six-parameter modeling method to represent parameters of solar cells. The traditional five-parameter model ignores the influence of temperature on series resistance and gives an accurate current-voltage (I - V ) characteristic expression only for mono-crystalline and poly-crystalline silicon solar cells. In this paper, padé approximants is used to express the relationship between series resistance and temperature and thus a new parameter, named temperature coefficient for series resistance, is introduced. The six-parameter modeling method can give a more reasonable description of series resistance about temperature and then provides a more accurate I-V characteristic estimation for silicon solar cells with different technology types, i. e., mono-crystalline, poly-crystalline, thin film, and triple-junction amorphous. Four types of silicon modules with different technology are tested at different solar irradiance and temperature conditions to validate the method proposed in this paper. Experiment results show the proposed six-parameter model is a simple, accurate and effective modeling method for solar cell parameters.
Keywords
elemental semiconductors; silicon; solar cells; thin films; I-V characteristic estimation; Si; current-voltage characteristic expression; five-parameter model; monocrystalline solar cells; padé approximants; polycrystalline solar cells; series resistance; six-parameter modeling method; solar irradiance; technology types; temperature conditions; thin film; triple-junction amorphous; Materials;
fLanguage
English
Publisher
ieee
Conference_Titel
Service Operations and Logistics, and Informatics (SOLI), 2014 IEEE International Conference on
Conference_Location
Qingdao
Type
conf
DOI
10.1109/SOLI.2014.6960750
Filename
6960750
Link To Document